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Lieferant: Thermo Fisher Scientific
Beschreibung: Digalliumtrisulfid ≥99,999% (Metall-Basis)
Lieferant: Thermo Fisher Scientific
Beschreibung: Digalliumtrisulfid ≥99,99% (Metall-Basis)
Lieferant: Merck
Beschreibung: With their high degree of UV transmittance, low particle count, low acidity and alkalinity and low evaporation residue level, LiChrosolv® solvents are ideal for reproducible separations. Since separations are normally carried out under gradient conditions in analytical HPLC, we offer solvents in 'gradient grade' as well as 'isocratic grade'. This minimises the gradient effect of the solvent involved.
Artikel-Nr: (APOSIN1891-100G)
Lieferant: Apollo Scientific
Hersteller Artikel Nummer : IN1891-100G
Beschreibung: Digalliumtrioxid 99,9%
UOM: 1 * 100 g


Lieferant: Thermo Fisher Scientific
Beschreibung: Digalliumtrioxid ≥99,999% (Metall-Basis), Puratronic®
Lieferant: Thermo Fisher Scientific
Beschreibung: Digalliumtriselenid ≥99,99% (Metall-Basis)
Lieferant: Thermo Fisher Scientific
Beschreibung: Digalliumtrioxid ≥99,999% (Metall-Basis), Puratronic®
Lieferant: Thermo Fisher Scientific
Beschreibung: Digalliumtrioxid 99.99+% (bezogen auf die Metalle der seltenen Erden)
Lieferant: Apollo Scientific
Beschreibung: Antimon(III)ethoxid 99.99+%

Lieferant: Thermo Fisher Scientific
Beschreibung: Antimon(III)ethoxid ≥99,9% (Metall-Basis)
Artikel-Nr: (BOSSBS-12448R)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12448R
Beschreibung: The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12448R-FITC)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12448R-FITC
Beschreibung: The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12448R-A555)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12448R-A555
Beschreibung: The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12448R-CY5)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12448R-CY5
Beschreibung: The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12448R-CY3)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12448R-CY3
Beschreibung: The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12448R-CY7)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12448R-CY7
Beschreibung: The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
UOM: 1 * 100 µl


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